...
首页> 外文期刊>Indian Journal of Science and Technology >Modeling and Analysis of MRR in WEDMed WC-CO Composite by Response Surface Methodology
【24h】

Modeling and Analysis of MRR in WEDMed WC-CO Composite by Response Surface Methodology

机译:电火花线切割WC-CO复合材料MRR的响应面建模与分析

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Wire electro discharge machining (WEDM) was applied to machine tungsten carbide-cobalt (WC-CO) metal matrix composite. It finds increasing application in auto, aeronautical and oil drill application. The material is extremely hard, brittle and tool grade. The present work is undertaken on 10% cobalt, 90% tungsten grade in which keen study is lacking. Amongst many variables, On-time, Off-time and ignition current were shortlisted as critical input parameters. The goal is to identify the input parameter level that maximizes the material removal rate. The input parameters for the experiments were selected after considering previous related work, manufacturer's catalog and industrial expert's opinion. From Taguchi L27 experimental plan, the Box-Behnken trials for 14 experiments were derived in order to model and to predict the output response with good accuracy. The investigation was carried out on the high speed Sodick machine so that it aligns with industry requirement of higher productivity. Response surface modeling and regression analysis was done. Analysis of variance was used to isolate parameters that are critical from pooled data. The experimental results were verified by running at recommended setting of the findings. The outcome was encouraging. Output response improves with on-time at 8 μ- Sec, off -time 15 μ- Sec and ignition current of 16 amperes. It was found that overall metal removal rates increased by 13%, to 17.42 mm3/min from the process average rate of 15.15 mm3/min. A mathematical equation was derived to predict performance. Surface, response contour plots were utilized to analyze performance. The validity of derived model was verified. Since error obtained was 4.5%, higher coefficient of determination is 87% and adequate precision was >4, the model is valid.
机译:线切割加工(WEDM)用于加工碳化钨-钴(WC-CO)金属基复合材料。它在汽车,航空和石油钻探应用中的应用越来越多。该材料非常坚硬,易碎并且具有工具等级。目前的工作是在缺乏敏锐研究的10%钴,90%钨品位上进行的。在许多变量中,接通时间,断开时间和点火电流被选为关键输入参数。目的是确定使材料去除率最大化的输入参数水平。在考虑先前的相关工作,制造商的产品目录和行业专家的意见之后,选择了实验的输入参数。从Taguchi L27实验计划中,导出了针对14个实验的Box-Behnken试验,以便以良好的精度建模和预测输出响应。研究是在高速Sodick机器上进行的,以使其符合更高生产率的行业要求。完成了响应面建模和回归分析。方差分析用于从汇总数据中分离出关键参数。通过在建议的发现设置下运行来验证实验结果。结果令人鼓舞。输出响应随着接通时间为8μSec,断开时间为15μSec和点火电流为16安培而得到改善。已发现,总金属去除率从过程平均速率15.15 mm3 / min提高到17.42 mm3 / min,提高了13%。推导了数学方程式以预测性能。曲面响应等高线图用于分析性能。验证了导出模型的有效性。由于获得的误差为4.5%,较高的确定系数为87%,并且足够的精度> 4,因此该模型有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号